US9045056B2 - Apparatus for controlling motor system of environment-friendly vehicle and method thereof - Google Patents
Apparatus for controlling motor system of environment-friendly vehicle and method thereof Download PDFInfo
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- US9045056B2 US9045056B2 US14/139,662 US201314139662A US9045056B2 US 9045056 B2 US9045056 B2 US 9045056B2 US 201314139662 A US201314139662 A US 201314139662A US 9045056 B2 US9045056 B2 US 9045056B2
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60L—PROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
- B60L15/00—Methods, circuits, or devices for controlling the traction-motor speed of electrically-propelled vehicles
- B60L15/20—Methods, circuits, or devices for controlling the traction-motor speed of electrically-propelled vehicles for control of the vehicle or its driving motor to achieve a desired performance, e.g. speed, torque, programmed variation of speed
- B60L15/2009—Methods, circuits, or devices for controlling the traction-motor speed of electrically-propelled vehicles for control of the vehicle or its driving motor to achieve a desired performance, e.g. speed, torque, programmed variation of speed for braking
- B60L15/2018—Methods, circuits, or devices for controlling the traction-motor speed of electrically-propelled vehicles for control of the vehicle or its driving motor to achieve a desired performance, e.g. speed, torque, programmed variation of speed for braking for braking on a slope
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- B60L15/00—Methods, circuits, or devices for controlling the traction-motor speed of electrically-propelled vehicles
- B60L15/20—Methods, circuits, or devices for controlling the traction-motor speed of electrically-propelled vehicles for control of the vehicle or its driving motor to achieve a desired performance, e.g. speed, torque, programmed variation of speed
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- B60L15/2009—Methods, circuits, or devices for controlling the traction-motor speed of electrically-propelled vehicles for control of the vehicle or its driving motor to achieve a desired performance, e.g. speed, torque, programmed variation of speed for braking
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Definitions
- the present disclosure relates to an apparatus for controlling a motor system of an environment-friendly vehicle and a method thereof, and more particularly, to an apparatus for controlling a motor system of an environment-friendly vehicle capable of exactly determining a variable switching condition by detecting a hill hold situation based on information about a driving slope angle, and a method thereof.
- An environment-friendly vehicle such as a pure electric vehicle (EV), a hybrid electric vehicle (HEV) and a fuel cell vehicle (FCEV), which does not exhaust any gas at all, is driven by converting DC power charged in a main battery into 3-phase AC power a motor using an inverter to operate a motor and then, transferring the driving force of the motor to driving wheels.
- EV pure electric vehicle
- HEV hybrid electric vehicle
- FCEV fuel cell vehicle
- a single sampling scheme may be applied for reducing an inverter noise sensitively felt by a driver or a passenger.
- a sampling frequency for obtaining information about a sensing current and a motor angle to control the inverter is set to be equal to the switching frequency of the inverter after the switching frequency is set high and fixed at it.
- NDH Noise, Vibration and Harshness
- a hill hold function which prevents a vehicle from rolling backward on an ascent road, may be implemented because an inverter controls the torque of a driving motor in an environment-friendly vehicle.
- the inverter in order to prevent a vehicle from rolling backward and improve NVH performance of a vehicle for a switching noise of an inverter, the inverter does not operate at a base switching frequency, but performs a variable switching operation.
- the inverter switching frequency is controlled through the variable switching operation to be higher than the base switching frequency, such that the switching noise sensitively felt by a driver and a passenger may be reduced.
- the number of sampling which is a control variable (current of a driving motor) for controlling a motor, is maintained corresponding to that in a base frequency band, so that the control accuracy is also maintained similarly to the base switching frequency control.
- the related art has the following problems in the method of determining a hill hold section.
- variable values may be inputted to the input condition of the variables for determining a hill hold condition even though the vehicle is not in a hill hold section.
- variable values may be inputted to the input condition of the variables for determining a hill hold condition even though the vehicle is not in a hill hold section.
- variable switching operation is performed so that the switching frequency increases.
- the inverter switching loss occurs and at the same time, the inverter switching efficiency is deteriorated.
- the present disclosure provides an apparatus for controlling a motor system of an environment-friendly vehicle which is capable of determining a variable switching condition of an inverter based on a command torque and information from the tilt angle sensor before applying the calculation result of the command torque for a motor to a driving motor after exactly determining a hill hold section using a tilt angle sensor of a vehicle, so that a vehicle sip phenomenon and an inverter switching loss may be prevented while a vehicle is climbing up on an inclined road, and a method thereof.
- an apparatus for controlling a motor system of an environment-friendly vehicle includes a tilt angle sensor to measure a driving tilt angle of a vehicle; a hill hold determinator to calculate a real-time driving gradient of the vehicle in order to determine a hill hold situation based on tilt angle information from the tilt angle sensor; and a variable switching determination controller to calculate a command torque for a motor based on the real-time gradient calculated by the hill hold determinator and to determine a variable switching condition of an inverter based on the command torque, a motor speed and previous and current tilt angle information from the tilt angle sensor.
- a method of controlling a motor system of an environment-friendly vehicle includes detecting information about a driving tilt angle; calculating a real-time gradient of a vehicle based on the driving tilt angle and a motor speed from a motor speed sensor; obtaining a motor command torque corresponding to a current tilt angle by applying the real-time gradient to a real-time gradient-torque map; determining a variable switching condition of an inverter when a tilt angle based on information about a current tilt angle is equal to or greater than a tilt angle based on information about a previous tilt angle; and performing a variable switching operation of the inverter when the variable switching condition is satisfied.
- the present invention has the following advantages.
- the tilt angle sensor is used for determining whether the environment-friendly vehicle is being driven in the hill hold section, and the variable switching condition of the inverter may be exactly decided by using the command torque for the motor, the rotation speed of the motor and information from the tilt angle sensor of the vehicle.
- the inverter may be set to be prohibited from performing the variable switching by exactly deciding the variable switching condition for the vehicle, so that the inverter switching loss may be reduced.
- FIG. 1 shows a an apparatus for controlling a motor system of an environment-friendly vehicle and a method thereof according to an embodiment of the present disclosure.
- the present disclosure which relates to a technique for controlling a motor system of an environment-friendly vehicle including a motor and an inverter, decides a variable switching condition of the inverter based on a command torque for the motor and information from a tilt angle sensor after exactly determining whether the vehicle is being driven in a hill hold section by using the tilt angle sensor.
- the vehicle may be prevented from rolling backward and the inverter switching loss may be prevented while the vehicle is moving on an ascent road.
- the apparatus for controlling a motor system includes a tilt angle sensor 10 configured to measure a driving tilt angle of a vehicle, a hill hold determinator 20 configured to calculate a real-time driving gradient of the vehicle in order to determine a hill hold situation based on tilt angle information from the tilt angle sensor 10 , and a variable switching determination controller 30 configured to calculate a command torque for a motor based on the real-time gradient calculated by the hill hold determinator 20 and to determine a variable switching condition of an inverter based on the command torque, a motor speed and previous and current tilt angle information from the tilt angle sensor 10 .
- the tilt angle sensor 10 installed in the environment-friendly vehicle detects information about a driving tilt angle.
- X is a sensing value measured by the tilt angle sensor 10 , that is, a value that is obtained by subtracting the acceleration obtained by differentiating the motor speed from the driving tilt angle information.
- step S 102 when the real-time tilt angle is calculated, a motor torque value, that is, a motor command torque is extracted according to a current tilt angle through a real-time tilt angle-torque map.
- a vehicle control microcomputer that is, the variable switching determination controller 30 counts the tilt angle information calculated as described above and compares previous tilt angle information with current tilt angle information in step S 103 .
- step S 104 of determining the variable switching condition for the inverter is performed.
- the determining of the variable switching condition that determines whether the inverter is in the variable switching condition or not, is performed by using the motor command torque Te or power according to the current tilt angle and the motor speed Wrpm.
- variable switching condition determination is performed in both cases in which the motor is driven for movement and the motor is driven for regenerative braking.
- the reason for performing the variable switching condition determination is because the maximum and minimum reference values of the motor command torque and speed are applied differently from each other.
- the inverter When the motor is driven for movement, the inverter performs the variable switching operation if following conditional inequality is satisfied: (Wrpm_cal1
- Wrpm is a motor speed
- Wrpm_cal1 is a motor speed minimum reference value
- Wrpm_cal2 is a motor speed maximum reference value
- Te_cal1 is a motor torque reference value
- Te_ref is a motor command torque
- Power_cal1 is a motor output reference value
- Power is a motor output.
- the inverter performs the variable switching operation if following conditional inequality is satisfied: (Wrpm_cal3 ⁇
- Wrpm is a motor speed
- Wrpm_cal3 is a motor speed minimum reference value
- Wrpm_cal4 is a motor speed maximum reference value
- Te_cal2 is a motor torque reference value
- Te_ref is a motor command torque
- Power_cal2 is a motor output reference value
- Power is a motor output.
- the inverter when the conditional inequalities are satisfied, the inverter performs the variable switching operation, so that the switching frequency is adjusted higher than the base switching frequency, so the inverter is controlled at the single sampling frequency.
- the inverter maintains the base switching frequency so that the inverter is controlled at the double sampling frequency.
- the sampling frequency is equal to the switching frequency.
- the present disclosure may exactly determine that the environment-friendly vehicle is in the hill hold section by using the tilt angle sensor and in addition, may exactly decide the variable switching condition of the inverter by using the command torque for the motor, the rotation speed of the motor and information from the tilt angle sensor of the vehicle.
- the inverter may be prevented from performing the variable switching operation, so that the switching loss of the inverter may be reduced.
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- Power Engineering (AREA)
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- Sustainable Development (AREA)
- Sustainable Energy (AREA)
- Electric Propulsion And Braking For Vehicles (AREA)
Abstract
Description
Real-time gradient(Road-Gradiant(%))=100*tan(a sin(X)), [Equation 1]
(Wrpm_cal1|Wrpm|Wrpm_cal2)&(|Te_ref|<Te_cal1)or(|Power|<Power_cal1),
(Wrpm_cal3≦|Wrpm|≦Wrpm_cal4)&(|Te_ref|<Te_cal2)or(|Power|<Power_cal2),
Claims (9)
(Wrpm_cal1≦|Wrpm|≦Wrpm_cal2)&(|Te_ref|<Te_cal1)or(|Power|<Power_cal1),
(Wrpm_cal3≦|Wrpm|≦Wrpm_cal4)&(|Te_ref|<Te_cal2)or(|Power|<Power_cal2)
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KR101491408B1 (en) * | 2014-02-12 | 2015-02-06 | 현대자동차주식회사 | Control method for hill start assist control system |
KR101684538B1 (en) * | 2015-06-18 | 2016-12-08 | 현대자동차 주식회사 | Inverter control method for hybrid vehicle |
KR101866018B1 (en) * | 2016-04-19 | 2018-06-08 | 현대자동차주식회사 | Method and apparatus for motor torque variable control of electric vehicle |
KR101886093B1 (en) * | 2016-06-03 | 2018-08-07 | 현대자동차 주식회사 | Motor controlling system for green car and method of thesame |
US10221940B2 (en) * | 2016-10-13 | 2019-03-05 | Ford Global Technologies, Llc | Neutral state movement protection for an automatic transmission |
US10259341B2 (en) * | 2017-03-15 | 2019-04-16 | GM Global Technology Operations LLC | Control systems and methods for preventing low vehicle speed |
US10227021B2 (en) | 2017-03-15 | 2019-03-12 | GM Global Technology Operations LLC | Initialization of closed loop control for vehicle stopping |
CN109367400B (en) * | 2018-09-19 | 2020-09-11 | 吉利汽车研究院(宁波)有限公司 | Torque arbitration method and device for starting stage of electric automobile |
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US20150066268A1 (en) | 2015-03-05 |
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